Endothelin-1 Inhibits Background Two-Pore Domain Channel TASK-1 in Primary Human Pulmonary Artery Smooth Muscle Cells

被引:56
作者
Tang, Bi [2 ]
Li, Yingji [2 ]
Nagaraj, Chandran [1 ]
Morty, Rory E. [5 ]
Gabor, Sabine [3 ]
Stacher, Elvira [4 ]
Voswinckel, Robert [5 ]
Weissmann, Norbert [5 ]
Leithner, Katharina [2 ]
Oischewski, Horst [2 ]
Olschewski, Andrea [1 ]
机构
[1] Med Univ Graz, Univ Clin Anesthesia & Intens Care Med, A-8036 Graz, Austria
[2] Med Univ Graz, Dept Pulmonol, Univ Clin Internal Med, A-8036 Graz, Austria
[3] Med Univ Graz, Univ Clin Surg, Dept Thorac & Hyperbar Surg, A-8036 Graz, Austria
[4] Med Univ Graz, Inst Pathol, A-8036 Graz, Austria
[5] Univ Clin Giessen, Dept Internal Med 2, Giessen, Germany
关键词
endothelin-1; TASK-1; channel; membrane potential; pulmonary hypertension; POTASSIUM CHANNEL; K+ CHANNEL; HYPERTENSION; EXPRESSION; PROLIFERATION; ANESTHETICS; RECEPTORS; HYPOXIA; ACID; RATS;
D O I
10.1165/rcmb.2008-0412OC
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Endothelin (ET)-1 causes long-lasting vasoconstriction and vascular remodeling by interacting with specific G-protein-coupled receptors in pulmonary artery smooth muscle cells (PASMCs), and thus plays an important role in the pathophysiology of pulmonary arterial hypertension. The two-pore domain K+ channel, TASK-1, controls the resting membrane potential in human PASMCs (hPASMCs), and renders these cells sensitive to a variety of vasoactive factors, as previously shown. ET-1 may exert its vasoconstrictive effects in part by targeting TASK-1. To clarify this, we analyzed the ET-1 signaling pathway related to TASK-1 in primary hPASMCs. We employed the whole-cell patch-clamp technique combined with TASK-1 small interfering RNA (siRNA) in hPASMC and the isolated, perfused, and ventilated mouse lung model. We found that ET-1 depolarized primary hPASMCs by phosphorylating TASK-1 at clinically relevant concentrations. The ET sensitivity of TASK-1 required ETA receptors, phospholipase C, phosphatidylinositol 4,5-biphosphate, diacylglycerol, and protein kinase C in primary hPASMCs. The ET-1 effect on membrane potential and TASK-1 was abrogated using TASK-1 siRNA. This is the first time that the background K+ channel, TASK-1 has been identified in the ET-1-mediated depolarization in native hPASMC, and might represent a novel pathologic mechanism related to pulmonary arterial hypertension.
引用
收藏
页码:476 / 483
页数:8
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